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Erschienen in: Rheologica Acta 6/2003

01.11.2003

Viscosity enhancement In non-Newtonian flow of dilute polymer solutions through crystallographic porous media

verfasst von: Simon J. Haward, Jeffrey A. Odell

Erschienen in: Rheologica Acta | Ausgabe 6/2003

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Abstract

We report results of the flow of dilute mono-disperse solutions of atactic poly(styrene) in di-octyl phthalate through regular crystallographic packed beds of spheres. Pressure drop measurements made as a function of flow rate across simple cubic and body centred cubic arrays of spheres have been used to estimate the specific viscosities of the polymer solutions as a function of the superficial Deborah number. Through both structures the onset Deborah number for the non-Newtonian increase in specific viscosity is found to be low when compared on the basis of well-characterized Zimm relaxation times. Surprisingly it is found that polymer solutions achieve a greater maximum specific viscosity in the simple cubic than in the body centred cubic array, a result contrary to prior expectations due to the absence of trailing stagnation points in the simple cubic structure. It is hypothesised that the trailing stagnation points in the body centred cubic array may be screened from the flow field by strands of oriented polymer and that, as such, the periodic variations in cross-sectional area of the flow (which are more severe in the simple cubic array) may play the most significant role in causing polymer extension and in enhancing the non-Newtonian viscosity.

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Literatur
Zurück zum Zitat Berry GC (1967) Thermodynamic and conformational properties of polystyrene. II. Intrinsic viscosity studies on dilute solutions of linear polystyrene. J Chem Phys 46:1338–1352 Berry GC (1967) Thermodynamic and conformational properties of polystyrene. II. Intrinsic viscosity studies on dilute solutions of linear polystyrene. J Chem Phys 46:1338–1352
Zurück zum Zitat Chilcott MD, Rallison JM (1988) Creeping flow of dilute polymer solutions past cylinders and spheres. J Non-Newtonian Fluid Mech 29:381–432 Chilcott MD, Rallison JM (1988) Creeping flow of dilute polymer solutions past cylinders and spheres. J Non-Newtonian Fluid Mech 29:381–432
Zurück zum Zitat Cogswell FN (1978) Converging flow and stretching flow: a compilation. J Non-Newtonian Fluid Mech 4:23–38 Cogswell FN (1978) Converging flow and stretching flow: a compilation. J Non-Newtonian Fluid Mech 4:23–38
Zurück zum Zitat Cressely R, Hocquart R (1981) Extension and relaxation of high macromolecules in oscillatory elongational flow using flow birefringence. Polym Prepr 22:120–121 Cressely R, Hocquart R (1981) Extension and relaxation of high macromolecules in oscillatory elongational flow using flow birefringence. Polym Prepr 22:120–121
Zurück zum Zitat Dauben DL, Menzie DE (1967) Flow of polymer solutions through porous media. J Pet Technol 19:1065–1073 Dauben DL, Menzie DE (1967) Flow of polymer solutions through porous media. J Pet Technol 19:1065–1073
Zurück zum Zitat de Gennes PG (1974) Coil-stretch transition of dilute flexible polymers under ultrahigh velocity gradients. J Chem Phys 60:5030–5042 de Gennes PG (1974) Coil-stretch transition of dilute flexible polymers under ultrahigh velocity gradients. J Chem Phys 60:5030–5042
Zurück zum Zitat Durrans TH (1971) Solvents, 8th edn. Chapman and Hall, London Durrans TH (1971) Solvents, 8th edn. Chapman and Hall, London
Zurück zum Zitat Durst F, Haas R, Kaczmar BU (1981) Flows of dilute hydrolyzed polyacrylamide solutions in porous media under various solvent conditions. J Appl Polym Sci 26:3125–3149 Durst F, Haas R, Kaczmar BU (1981) Flows of dilute hydrolyzed polyacrylamide solutions in porous media under various solvent conditions. J Appl Polym Sci 26:3125–3149
Zurück zum Zitat Dyakonova NE, Odell JA, Brestkin YV, Lyulin AV, Saez AE (1996) Macromolecular strain in periodic models of porous media flows. J Non-Newtonian Fluid Mech 67:285–310 Dyakonova NE, Odell JA, Brestkin YV, Lyulin AV, Saez AE (1996) Macromolecular strain in periodic models of porous media flows. J Non-Newtonian Fluid Mech 67:285–310
Zurück zum Zitat Graessley WW (1980) Polymer chain dimensions and the dependence of viscoelastic properties on concentration, molecular weight and solvent power. Polymer 21:258–262 Graessley WW (1980) Polymer chain dimensions and the dependence of viscoelastic properties on concentration, molecular weight and solvent power. Polymer 21:258–262
Zurück zum Zitat Haas R, Durst F (1982) Viscoelastic flow of dilute polymer solutions in regularly packed beds. Rheol Acta 21:566–571 Haas R, Durst F (1982) Viscoelastic flow of dilute polymer solutions in regularly packed beds. Rheol Acta 21:566–571
Zurück zum Zitat Haward SJ, Odell JA (2003) Molecular orientation in non-Newtonian flow of dilute polymer solutions around spheres. Rheol Acta (submitted) Haward SJ, Odell JA (2003) Molecular orientation in non-Newtonian flow of dilute polymer solutions around spheres. Rheol Acta (submitted)
Zurück zum Zitat Hinch EJ (1977) Mechanical models of dilute polymer solutions in strong flows. Phys Fluids 20:S22–S30 Hinch EJ (1977) Mechanical models of dilute polymer solutions in strong flows. Phys Fluids 20:S22–S30
Zurück zum Zitat James DF, McLaren DR (1975) The laminar flow of dilute polymer solutions through porous media. J Fluid Mech 70:733–752 James DF, McLaren DR (1975) The laminar flow of dilute polymer solutions through porous media. J Fluid Mech 70:733–752
Zurück zum Zitat James DF, Saringer JH (1980) Extensional flow of dilute polymer solutions. J Fluid Mech 97:655–672 James DF, Saringer JH (1980) Extensional flow of dilute polymer solutions. J Fluid Mech 97:655–672
Zurück zum Zitat Keller A, Odell JA (1985) The extensibility of macromolecules in solution: a new focus for macromolecular science. Colloid Polym Sci 263:181–201 Keller A, Odell JA (1985) The extensibility of macromolecules in solution: a new focus for macromolecular science. Colloid Polym Sci 263:181–201
Zurück zum Zitat Kulicke WM, Haas R (1984) Flow behaviour of dilute polyacrylamide solutions through porous media. 1. Influence of chain length, concentration, and thermodynamic quality of the solvent. Ind Eng Chem Fundam 23:308–315 Kulicke WM, Haas R (1984) Flow behaviour of dilute polyacrylamide solutions through porous media. 1. Influence of chain length, concentration, and thermodynamic quality of the solvent. Ind Eng Chem Fundam 23:308–315
Zurück zum Zitat Marshall RJ, Metzner AB (1967) Flow of viscoelastic fluids through porous media. Ind Eng Chem Fundam 6:393–400 Marshall RJ, Metzner AB (1967) Flow of viscoelastic fluids through porous media. Ind Eng Chem Fundam 6:393–400
Zurück zum Zitat McDonald IG, El-Sayed MS, Mow K, Dullien FAL (1979) Flow through porous media—the ergun equation revised. Ind Eng Chem Fundam 18:199–205 McDonald IG, El-Sayed MS, Mow K, Dullien FAL (1979) Flow through porous media—the ergun equation revised. Ind Eng Chem Fundam 18:199–205
Zurück zum Zitat Miles MJ, Keller A (1980) Conformational relaxation time in polymer solutions by elongational flow experiments. 2. Preliminaries of further developments: chain retraction; identification of molecular weight fractions in a mixture. Polymer 21:1295–1298 Miles MJ, Keller A (1980) Conformational relaxation time in polymer solutions by elongational flow experiments. 2. Preliminaries of further developments: chain retraction; identification of molecular weight fractions in a mixture. Polymer 21:1295–1298
Zurück zum Zitat Muller AJ, Saez AE (1999) In: Nguyen TQ, Kausch HH (eds) Flexible chain dynamics in elongational flows: theory and experiment. Springer, Berlin Heidelberg New York Muller AJ, Saez AE (1999) In: Nguyen TQ, Kausch HH (eds) Flexible chain dynamics in elongational flows: theory and experiment. Springer, Berlin Heidelberg New York
Zurück zum Zitat Muller M, Vorwerk J, Brunn PO (1998) Optical studies of local flow behaviour of a non-Newtonian fluid inside a porous medium. Rheol Acta 37:189–194CrossRef Muller M, Vorwerk J, Brunn PO (1998) Optical studies of local flow behaviour of a non-Newtonian fluid inside a porous medium. Rheol Acta 37:189–194CrossRef
Zurück zum Zitat Odell JA, Carrington SP (2001) Extensional flow oscillatory opto-rheometry. Presented at Physical Aspects of Polymer Science, Cambridge, UK Odell JA, Carrington SP (2001) Extensional flow oscillatory opto-rheometry. Presented at Physical Aspects of Polymer Science, Cambridge, UK
Zurück zum Zitat Odell JA, Muller AJ, Keller A (1988) Non-Newtonian behaviour of hydrolysed polyacrylamide in strong elongational flows: a transient network approach. Polymer 29:1179–1190 Odell JA, Muller AJ, Keller A (1988) Non-Newtonian behaviour of hydrolysed polyacrylamide in strong elongational flows: a transient network approach. Polymer 29:1179–1190
Zurück zum Zitat Perkins TT, Smith DE, Chu S (1997) Single polymer dynamics in an elongational flow. Science 276:2016–2021CrossRefPubMed Perkins TT, Smith DE, Chu S (1997) Single polymer dynamics in an elongational flow. Science 276:2016–2021CrossRefPubMed
Zurück zum Zitat Saez AE, Muller AJ, Odell JA (1994) Flow of monodisperse polystyrene solutions through porous media. Colloid Polym Sci 272:1224–1233 Saez AE, Muller AJ, Odell JA (1994) Flow of monodisperse polystyrene solutions through porous media. Colloid Polym Sci 272:1224–1233
Zurück zum Zitat Zick AA, Homsy GM (1982) Stokes flow through periodic arrays of spheres. J Fluid Mech 115:13–26 Zick AA, Homsy GM (1982) Stokes flow through periodic arrays of spheres. J Fluid Mech 115:13–26
Metadaten
Titel
Viscosity enhancement In non-Newtonian flow of dilute polymer solutions through crystallographic porous media
verfasst von
Simon J. Haward
Jeffrey A. Odell
Publikationsdatum
01.11.2003
Verlag
Springer-Verlag
Erschienen in
Rheologica Acta / Ausgabe 6/2003
Print ISSN: 0035-4511
Elektronische ISSN: 1435-1528
DOI
https://doi.org/10.1007/s00397-003-0306-y

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